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Inflammatory responses of urban air PM modulated by chemical composition and different air quality situations in Nanjing, China

机译:中国南京化学成分调节城市空气PM的炎症反应及不同的空气质量局面

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摘要

The health risks of air pollutants and ambient particulate matter (PM) are widely known. PM composition and toxicity have shown substantial spatiotemporal variability. Yet, the connections between PM composition and toxicological and health effects are vaguely understood. This is a crucial gap in knowledge that needs to be addressed in order to establish air quality guidelines and limit values that consider the chemical composition of PM instead of the current assumption of equal toxicity per inhaled dose. Here, we demonstrate further evidence for varying toxicological effects of urban PM at equal mass concentrations, and estimate how PM composition and emission source characteristics influenced this variation. We exposed a co-culture model mimicking alveolar epithelial cells and macrophages with size-segregated urban ambient PM collected before, during, and after the Nanjing Youth Olympic Games 2014. We measured the release of a set of cytokines, cell cycle alterations, and genotoxicity, and assessed the spatiotemporal variations in these responses by factorial multiple regression analysis. Additionally, we investigated how a previously identified set of emission sources and chemical components affected these variations by mixed model analysis. PM-exposure induced cytokine signaling, most notably by inducing dose-dependent increases of macrophage-regulating GM-CSF and proinflammatory TNFα, IL-6, and IL-1β concentrations, modest dose-dependent increase for cytoprotective VEGF-A, but very low to no responses for anti-inflammatory IL-10 and immunoregulatory IFNy, respectively. We observed substantial differences in proinflammatory cytokine production depending on PM sampling period, location, and time of day. The proinflammatory response correlated positively with cell cycle arrest in G1/G0 phase and loss of cellular metabolic activity. Furthermore, PM_(0.2) caused dose-dependent increases in sub-G1/G0 cells, suggesting increased DNA degradation and apoptosis. Variations in traffic and oil/fuel combustion emissions contributed substantially to the observed spatiotemporal variations of toxicological responses.
机译:空气污染物和环境颗粒物质(PM)的健康风险是众所周知的。 PM组成和毒性表现出很大的时空变异性。然而,依然理解PM组成和毒理学和健康效果之间的连接。这是需要解决的知识中的至关重要差距,以便建立空气质量准则和限制考虑PM的化学成分而不是目前每次吸入剂量的相同毒性的假设。在这里,我们证明了在等群众浓度下改变城市PM的毒理学影响的进一步证据,并估计PM组成和排放源特征的影响影响了这种变化。我们暴露了一个共同培养模型,模拟肺泡上皮细胞和巨大偏见的城市环境PM,在南京青年奥运会2014年之前收集的尺寸隔离城市环境。我们测量了一组细胞因子,细胞周期改变和基因毒性的释放并且评估了通过阶乘多元回归分析的这些响应中的时空变化。此外,我们研究了先前确定的一组发射源和化学成分通过混合模型分析影响了这些变化。 PM-曝光诱导细胞因子信号,最值得注意的是通过诱导剂量依赖性调节GM-CSF和促炎TNFα,IL-6和IL-1β浓度,适度的剂量依赖性增加,但细胞保护VVF-A,但非常低对于抗炎IL-10和免疫调节IFNY的反应。根据PM采样期,位置和时间观察到促炎细胞因子产生的大量差异。促炎响应与G1 / G0相的细胞周期停滞和细胞代谢活性丧失相关。此外,PM_(0.2)引起亚g1 / g0细胞中的剂量依赖性增加,表明DNA降解和细胞凋亡增加。交通和石油/燃料燃烧排放的变化基本上促成了观察到的毒理学反应的时空变化。

著录项

  • 来源
    《Environmental research》 |2021年第1期|110382.1-110382.16|共16页
  • 作者单位

    University of Eastern Finland Department of Environmental and Biological Sciences Yliopistonranta 1 P.O. Box 1627 FI-70211 Kuopio Finland;

    University of Eastern Finland Department of Environmental and Biological Sciences Yliopistonranta 1 P.O. Box 1627 FI-70211 Kuopio Finland;

    University of Eastern Finland Department of Environmental and Biological Sciences Yliopistonranta 1 P.O. Box 1627 FI-70211 Kuopio Finland Ramboll Finland Oy Itsehallintokuja 3 FI-02601 Espoo Finland;

    University of Eastern Finland Department of Environmental and Biological Sciences Yliopistonranta 1 P.O. Box 1627 FI-70211 Kuopio Finland;

    University of Eastern Finland Department of Environmental and Biological Sciences Yliopistonranta 1 P.O. Box 1627 FI-70211 Kuopio Finland;

    University of Eastern Finland Department of Environmental and Biological Sciences Yliopistonranta 1 P.O. Box 1627 FI-70211 Kuopio Finland;

    Nanjing University School of the Envtonment Branch 24 Mailbox of Nanjing University Xianlin Campus No. 163 Xianlin Avenue Qixia District 210023 Nanjing China;

    Nanjing University School of the Envtonment Branch 24 Mailbox of Nanjing University Xianlin Campus No. 163 Xianlin Avenue Qixia District 210023 Nanjing China;

    University of Eastern Finland Department of Environmental and Biological Sciences Yliopistonranta 1 P.O. Box 1627 FI-70211 Kuopio Finland;

    Finnish Meteorological Institute Yliopistonranta 1 P.O. Box 1627 FI-70211 Kuopio Finland;

    University of Eastern Finland Department of Environmental and Biological Sciences Yliopistonranta 1 P.O. Box 1627 FI-70211 Kuopio Finland;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Cell co-culture; Inhalation toxicology; Immunotoxicology; Cell cycle alteration; Emission sources;

    机译:细胞共同培养;吸入毒理学;免疫毒理学;细胞周期改变;排放来源;

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